The percentage of drug released in the bloodstream t hours after being administered is affected by numerousvariables including drug solubility and filler ingredients. For a particular drug and dosage, the percentage of drugreleased P is given by P = 48 t 1 / 5 ( 0 ≤ t ≤ , 35 ) . For example, the value P = 50 represents 50% of the drugreleased. a. Determine the percentage of drug released after 2 hr. Round to the nearest percent. b. How many hours is required for 75% of the drug to be released? Round to the nearest tenth of an hour.
The percentage of drug released in the bloodstream t hours after being administered is affected by numerousvariables including drug solubility and filler ingredients. For a particular drug and dosage, the percentage of drugreleased P is given by P = 48 t 1 / 5 ( 0 ≤ t ≤ , 35 ) . For example, the value P = 50 represents 50% of the drugreleased. a. Determine the percentage of drug released after 2 hr. Round to the nearest percent. b. How many hours is required for 75% of the drug to be released? Round to the nearest tenth of an hour.
Solution Summary: The author explains that the percentage of drug released in the bloodstream t hours after being administered is affected by numerous variables including drug solubility and filler ingredients.
The percentage of drug released in the bloodstream t hours after being administered is affected by numerousvariables including drug solubility and filler ingredients. For a particular drug and dosage, the percentage of drugreleased P is given by
P
=
48
t
1
/
5
(
0
≤
t
≤
,
35
)
. For example, the value
P
=
50
represents 50% of the drugreleased. a. Determine the percentage of drug released after 2 hr. Round to the nearest percent. b. How many hours is required for 75% of the drug to be released? Round to the nearest tenth of an hour.
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